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Understanding the role of fillers in the hydration of citrate-activated BOF slag binder using PARC analysis

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Abstract

This study investigates the hydration of basic oxygen furnace (BOF) slag pastes activated with tri-potassium citrate and the role of fine limestone and quartz fillers. Quantitative XRD, SEM–EDX with PARC, and mass balance modelling were combined to follow phase reactivity and hydrate formation. Brownmillerite (C₂F) and C₂S were identified as the main reactive phases. At 7 days, both contributed equally to hydrogarnet and C-S-H formation, while by 56 days C₂S became dominant. Fillers modified this balance: limestone mainly increased the overall hydrate content without altering the assemblage, whereas quartz enhanced late C₂S reactivity, raising C-S-H and hibschite proportions and lowering katoite. Hydrogarnets remained the major hydration product throughout, with a shift from katoite to silica-rich compositions over time. Deviations between modelled and experimental volatile contents highlight the influence of carbonation and variable hydrate stoichiometry, which are not captured in the current model.

Original languageEnglish
Article number146271
Number of pages16
JournalConstruction and Building Materials
Volume523
DOIs
Publication statusPublished - 16 May 2026

Bibliographical note

Publisher Copyright:
© 2026 The Authors.

Keywords

  • Amorphous
  • BOF slag
  • Fine fillers
  • Hydration kinetic
  • PARC
  • Phase assemblage
  • Potassium citrate

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